Hadronic interactions and nuclear physics
arXiv:0812.1236
Abstract
I give an overview of efforts in the last year to calculate interactions among hadrons using lattice QCD. Results discussed include the extraction of low-energy phase shifts and three-body interactions, and the study of pion and kaon condensation. A critical appraisal is offered of recent attempts to calculate nucleon-nucleon and nucleon-hyperon potentials on the lattice.
15 pages, 16 figures, Talk given at 26th International Symposium on Lattice Field Theory (Lattice 2008), Williamsburg, Virginia, USA, July 14-20, 2008
References in corpus (23)
- Nuclear Force from Lattice QCD
- Structure of A=10-13 nuclei with two- plus three-nucleon interactions from chiral effective field theory
- Hyperon-Nucleon Scattering from Fully-Dynamical Lattice QCD
- Multi-Pion Systems in Lattice QCD and the Three-Pion Interaction
- Multi-Pion States in Lattice QCD and the Charged-Pion Condensate
- Precise Determination of the I=2 pipi Scattering Length from Mixed-Action Lattice QCD
- n-Boson Energies at Finite Volume and Three-Boson Interactions
- Hyperon-nucleon force from lattice QCD
- Three-boson problem at low energy and Implications for dilute Bose-Einstein condensates
- Nuclear Force from Monte Carlo Simulations of Lattice Quantum Chromodynamics
- The K+K+ Scattering Length from Lattice QCD
- The Energy of n Identical Bosons in a Finite Volume at O(L^{-7})
- Meson-baryon scattering lengths in HBPT
- pi pi scattering
- Pion Scattering in Wilson Chiral Perturbation Theory
- Pion scattering in Wilson ChPT
- I=2 Two-Pion Wave Function and Scattering Phase Shift
- Bethe--Salpeter wave functions in integrable models
- Isotropic and Anisotropic Lattice Spacing Corrections for I=2 pi-pi Scattering from Effective Field Theory
- Restless pions: orbifold boundary conditions and noise suppression in lattice QCD
- Three fermions in a box
- Multi-meson States in Lattice QCD
- pi+ pi+, K+ K+ and B B Interactions